Pappius H M
Goad Unit, Montreal Neurological Institute McGill University, Montreal, Quebec, Canada.
Neurochem Res. 1991 Sep;16(9):941-9. doi: 10.1007/BF00965837.
The studies reviewed here represent a continuing search for mechanisms which play a role in neurological disturbances resulting from brain injury. Focal cortical freezing lesions in rats were shown to cause a widespread decrease in local cerebral glucose utilization (LCGU) in cortical areas of the lesioned hemisphere and this was interpreted as reflecting a depression of cortical activity. Such an interpretation was supported by the finding that in lesioned brain reduction of cerebral metabolism by pentobarbital and isoflurane was limited by the metabolic depression that has already occurred as a result of injury and by the demonstration that the energy status and substrate (glucose) supply in the cortical areas in the injured brain have not been compromised at the time when LCGU was decreased. Both the serotonergic and the noradrenergic neurotransmitter systems were implicated in functional alterations associated with injury. Cortical serotonin (5-HT) metabolism was increased throughout the lesioned hemisphere and complete inhibition of 5-HT synthesis with p-chlorophenylalanine ameliorated the decrease in cortical LCGU, interpreted as reflecting cortical functional depression. Cortical norepinephrine metabolism was bilaterally increased in focally injured brain, while prazosin, a selective alpha 1-noradrenergic receptor blocker, normalized cortical LCGU in the lesioned hemisphere. Low-affinity in vivo binding of [125I]HEAT, another selective alpha 1-receptor ligand, was specifically increased in cortical areas of the lesioned hemisphere at the time of the greatest depression in LCGU, suggesting that alpha 1-adrenoreceptors may be of functional importance in injured brain.(ABSTRACT TRUNCATED AT 250 WORDS)
此处回顾的研究代表了对在脑损伤导致的神经功能障碍中起作用的机制的持续探索。已表明,大鼠局灶性皮质冷冻损伤会导致损伤半球皮质区域的局部脑葡萄糖利用率(LCGU)广泛降低,这被解释为反映了皮质活动的抑制。戊巴比妥和异氟烷导致的脑代谢降低在损伤脑内受到限制,这一发现支持了上述解释,因为这种限制是由损伤已经导致的代谢抑制引起的,同时也通过证明在LCGU降低时,损伤脑皮质区域的能量状态和底物(葡萄糖)供应并未受损得以证实。血清素能和去甲肾上腺素能神经递质系统均与损伤相关的功能改变有关。整个损伤半球的皮质血清素(5-HT)代谢增加,用对氯苯丙氨酸完全抑制5-HT合成可改善皮质LCGU的降低,这被解释为反映了皮质功能抑制。局灶性损伤脑内双侧皮质去甲肾上腺素代谢增加,而选择性α1-去甲肾上腺素能受体阻滞剂哌唑嗪可使损伤半球的皮质LCGU恢复正常。在LCGU降低最明显时,另一种选择性α1-受体配体[125I]HEAT的低亲和力体内结合在损伤半球的皮质区域特异性增加,这表明α1-肾上腺素能受体在损伤脑内可能具有功能重要性。(摘要截短于250词)